Welding machine for gold bead production
By designing an automated gold bead production welding machine and utilizing the collaborative work of the machine, welding components, clamping components and gold wire raw material components, the problem of low efficiency in traditional gold bead welding was solved, and an efficient and precise welding process was achieved.
Patent Information
- Application Number
- CN202422598578.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-25
AI Technical Summary
Traditional gold bead welding methods rely on manual operation, resulting in low processing efficiency and high difficulty. The steps of clamping the gold beads and removing the gold wire are time-consuming.
A gold bead welding machine is designed for production, which includes a machine platform, a welding assembly, a clamping assembly, a feeding assembly and a gold wire raw material assembly. Through the coordinated action of the mobile drive, the clamping assembly and the cutting drive, the gold beads and gold wires are automatically clamped and cut, and the welding position is precisely adjusted.
It improves the processing efficiency of gold bead welding, reduces welding uncertainty, improves welding quality and accuracy, and reduces the need for manual operation.
Smart Images

Figure CN223394593U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of jewelry processing equipment, and in particular to a welding machine for gold bead production. Background Art
[0002] Gold beads are a popular jewelry item. Manufacturers often weld various components onto them for modification or further processing. Using a welding torch to solder gold wire to the beads is a common method. Traditionally, workers hold the beads with a tool in one hand while welding with the other. This method is challenging for operators, as both the bead clamping and wire removal steps are time-consuming and require specialized skills, resulting in low processing efficiency. Summary of the Invention
[0003] In order to improve the processing efficiency of gold beads, the present application provides a welding machine for gold bead production.
[0004] This application provides a welding machine for gold bead production, which adopts the following technical solution:
[0005] A welding machine for producing gold beads, comprising:
[0006] Machine;
[0007] A welding assembly is used for welding, wherein a moving drive member is provided on the machine platform, and the moving drive member is used to move the welding assembly;
[0008] A clamping assembly is arranged on the machine platform;
[0009] A loading assembly, used to move the gold beads to the clamping position of the clamping assembly;
[0010] The gold wire raw material assembly is used to convey the gold wire. The gold wire raw material assembly is close to the clamping assembly. The gold wire raw material assembly is provided with a cutting drive component. The driving end of the cutting drive component is provided with a cutting shear, and the cutting shear is used to cut the gold wire.
[0011] By adopting the above technical solution, when it is necessary to weld gold beads and gold wires, the clamping component can be used to take out the gold beads from the loading component and place them at the welding position of the welding component. The gold wire can be transmitted through the gold wire raw material component, and the cutting drive component can drive the cutting shear to cut the gold wire. The gold wire can be clamped to the welding position of the welding component, and the welding component can be moved by the moving drive component. The position of the welding component can be adjusted for welding, which replaces the staff's handheld tools for welding, thereby improving processing efficiency, reducing welding uncertainty, and improving welding quality.
[0012] Optionally, a placement rack is provided on the machine platform, the welding assembly includes a push-clamp rack and a main weldment, the push-clamp rack is slidingly connected to the placement rack, the mobile driving component is arranged on the placement rack, the mobile driving component is used to drive the push-clamp rack to move, and the main weldment is installed on the push-clamp rack.
[0013] By adopting the above technical solution, the clamped gold beads and gold wires can be placed on the placement rack, and the mobile driving member drives the clamping rack to move to adjust the position of the main welding parts, thereby improving the welding accuracy.
[0014] Optionally, the clamping assembly includes a fixed frame, a transverse frame, a lifting frame, a gold bead clamp and a bead clamping drive. The fixed frame is set on the machine platform, the transverse frame is slidably connected to the fixed frame, the lifting frame is slidably connected to the transverse frame, and the transverse frame is provided with a lifting drive for driving the lifting frame to rise and fall. The number of the gold bead clamps is not less than two, and the gold bead clamps are symmetrically arranged. The gold bead clamps and the bead clamping drive are both connected to the lifting frame, and the bead clamping drive is used to drive the gold bead clamps to approach or move away from each other.
[0015] By adopting the above technical solution, when it is necessary to clamp the gold beads, the transverse frame and the lifting frame can be moved so that the lifting frame is close to the gold beads of the loading assembly. The bead clamping drive drives the gold bead clamps to approach each other, so that the gold beads can be clamped.
[0016] Optionally, the bottom of the lifting frame is rotatably connected to a rotating seat, the gold bead clamp and the bead clamp driving member are both connected to the rotating seat, the lifting frame is provided with a rotating driving member for driving the rotating seat to rotate, at least two gold wire clamps are slidingly connected to the rotating seat, and the rotating seat is provided with a wire clamp driving member for driving the gold wire clamp to move.
[0017] By adopting the above technical solution, after clamping the gold bead, the rotating seat can be driven to rotate, and the transverse frame and the lifting frame can be moved to make the rotating seat close to the gold wire raw material assembly. The wire clamp is driven by the wire clamping drive to move the gold wire to press the gold wire against the side wall of the gold bead to form a clamp. Then, the gold wire is cut to obtain the gold wire to be welded, and the gold wire is temporarily clamped on the side wall of the gold bead to facilitate welding.
[0018] Optionally, a transmission gear is connected to one end of the gold bead clamp close to the rotating seat, the transmission gear is rotatably connected to the rotating seat, a transmission rack is slidingly connected to the rotating seat, the transmission rack is engaged with the transmission gear, and the driving end of the bead clamp driving member is connected to the transmission rack.
[0019] By adopting the above technical solution, when the gold bead clamp needs to be moved, the bead clamp driving member drives the transmission rack to move, which can drive the transmission gear and the gold bead clamp to rotate.
[0020] Optionally, a transverse driving member is provided on the fixed frame, a transverse threaded rod is rotatably connected to the fixed frame, the transverse frame is threadedly connected to the transverse threaded rod, and a driving end of the transverse driving member is connected to the transverse threaded rod.
[0021] By adopting the above technical solution, the transverse driving member can drive the transverse threaded rod to rotate, thereby driving the transverse frame to slide.
[0022] Optionally, the gold wire raw material assembly includes a raw material rack and a conveying tube, the raw material rack is installed on the machine table, the conveying tube is connected to the feeding end of the raw material rack, a conveying channel is provided inside the raw material rack, the conveying tube is connected to the conveying channel of the raw material rack, the cutting drive component is installed at the discharging end of the raw material rack, the discharging end of the raw material rack is close to the clamping assembly, and a conveying assembly is provided on the raw material rack.
[0023] By adopting the above technical solution, the gold wire can be inserted into the conveying tube during processing, and then enter the conveying channel of the raw material rack for transportation. It is transported through the conveying component, and the conveying channel limits the gold wire. The cutting shear can be driven by the cutting drive to cut the gold wire to obtain the required gold wire.
[0024] Optionally, the transport assembly includes a transport shell, a transport wheel and a transport drive member, the transport shell is connected to the raw material rack, the interior of the transport shell is connected to the transport channel, the transport wheel is rotatably connected to the inner wall of the transport shell, and the transport drive member is used to drive the transport wheel to rotate.
[0025] By adopting the above technical solution, when conveying the gold wire, the wheel surface of the conveying wheel can contact the gold wire, so that the conveying driving member drives the conveying wheel to rotate, thereby driving the gold wire to move, achieving the effect of quickly conveying the gold wire.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] 1. When gold beads and gold wires need to be welded, the clamping assembly can be used to take the gold beads from the loading assembly to the welding position of the welding assembly. The gold wire is then transferred through the gold wire raw material assembly. The cutting drive component drives the cutting shear to cut the gold wire. The gold wire is clamped to the welding position of the welding assembly. The welding assembly is moved by the moving drive component, and the position of the welding assembly is adjusted for welding. This replaces the manual welding by workers, thereby improving processing efficiency, reducing welding uncertainty, and improving welding quality.
[0028] 2. When it is necessary to clamp the gold beads, the transverse frame and the lifting frame can be moved so that the lifting frame is close to the gold beads of the loading assembly. The bead clamping drive component drives the gold bead clamps to move closer to each other to clamp the gold beads;
[0029] 3. After clamping the gold bead, the rotating seat can be driven to rotate, and the transverse frame and the lifting frame can be moved to make the rotating seat close to the gold wire raw material assembly. The wire clamp is driven by the wire clamping member to move the gold wire to press the gold wire against the side wall of the gold bead to form a clamp. Then the gold wire is cut to obtain the gold wire to be welded, and the gold wire is temporarily clamped on the side wall of the gold bead to facilitate welding. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 It is a schematic diagram of the overall structure in the embodiment of the present application.
[0031] Figure 2 It is a structural diagram of the placement rack in an embodiment of the present application.
[0032] Figure 3 This is a diagram of the internal structure of the rotating seat in the embodiment of the present application.
[0033] Figure 4 It is a diagram of the internal structure of the fixing frame in the embodiment of the present application.
[0034] Figure 5 It is a diagram of the internal structure of the raw material rack in the embodiment of the present application.
[0035] Description of reference numerals:
[0036] 1. Machine platform; 11. Moving drive member; 12. Vibrating plate; 13. Discharging track; 14. Placement rack; 141. Placement seat; 2. Push-clamp rack; 21. Main welding part; 3. Fixed rack; 31. Transverse frame; 32. Lifting rack; 33. Gold bead clamp; 331. Transmission gear; 34. Bead clamping drive member; 35. Lifting drive member; 36. Rotating drive member; 37. Transverse drive member; 38. Transverse threaded rod; 4. Raw material rack; 41. Transport tube; 42. Cutting drive member; 421. Cutting shear; 43. Cutting seat; 44. Transport shell; 45. Transport wheel; 46. Transport drive member; 5. Rotating seat; 51. Gold wire clamp; 52. Wire clamping drive member; 53. Transmission rack. DETAILED DESCRIPTION
[0037] The following is combined with Figure 1-5 This application is described in further detail.
[0038] The embodiment of the present application discloses a welding machine for producing gold beads.
[0039] Reference Figure 1 and Figure 2 , a welding machine for gold bead production, comprising:
[0040] Machine 1;
[0041] The welding assembly is provided on the machine 1 and is used for welding. The machine 1 is provided with a moving drive 11, which is a cylinder and is used to move the welding assembly.
[0042] A clamping assembly is provided on the machine 1 and can be used to clamp the gold bead 33 to the welding position of the welding assembly;
[0043] The loading assembly is used to move the gold beads to the clamping position of the clamping assembly. The loading assembly includes a vibrating plate 12, which is arranged on one side of the machine 1. The vibrating plate 12 is close to the clamping assembly. The discharge end of the vibrating plate 12 is connected to the discharge track 13. The gold beads placed in the vibrating plate 12 can be fed into the discharge track 13 and then discharged from the discharge track 13.
[0044] The gold wire raw material assembly is set on the machine 1. The gold wire raw material assembly is used to convey the gold wire. The gold wire raw material assembly is close to the clamping assembly. The gold wire raw material assembly is provided with a cutting drive component 42. The cutting drive component 42 is a cylinder. The driving end of the cutting drive component 42 is provided with a cutting knife 421. The cutting knife 421 is used to cut the gold wire.
[0045] When it is necessary to weld the gold beads, the gold beads in the vibration plate 12 are transported out of the discharge track 13, and the clamping assembly holds the gold bead clamp 33 to the welding position of the welding assembly. The gold wire is transmitted through the gold wire raw material assembly, and the cutting drive 42 drives the cutting shear 421 to cut the gold wire. The gold wire clamp 51 is held to the welding position of the welding assembly, and the welding assembly is moved by the moving drive 11. The position of the welding assembly is adjusted, so that the gold beads and the gold wire can be welded, instead of the staff holding tools for welding, thereby improving processing efficiency.
[0046] A placement rack 14 is provided on the top of the machine 1, and a placement seat 141 is installed on the top of the placement rack 14. The welding assembly includes a push-clamp rack 2 and a main welding part 21. The push-clamp rack 2 is slidingly connected to the top of the placement rack 14. The movable driving component 11 is arranged on the placement rack 14. The driving end of the movable driving component 11 is connected to the push-clamp rack 2. The movable driving component 11 can be used to drive the push-clamp rack 2 to move, so that the push-clamp rack 2 is close to or away from the placement seat 141, so as to clamp or release the gold beads. The main welding part 21 is a welding gun, which is installed on the push-clamp rack 2. The number of main welding parts 21 equipped on each push-clamp rack 2 is two, and the two main welding parts 21 on the same push-clamp rack 2 are symmetrically arranged, and the welding head end of the main welding part 21 faces the placement seat 141.
[0047] After the clamping assembly clamps the gold bead 33, the gold bead can be placed in the placement seat 141, and the mobile drive drives the clamping frame 2 to move close to the placement seat 141 to clamp the gold bead, so that the gold bead is in a fixed state, thereby clamping the gold bead. The clamping assembly can be made to release the gold bead, and then welding can be performed through the welding assembly. The two main welding parts 21 simultaneously weld the gold wires on both sides of the gold bead to improve efficiency.
[0048] Reference Figure 1 and Figure 3 The lifting frame 32 is slidably connected to the side wall of the traversing frame 31, and the lifting frame 32 slides in the vertical direction. The traversing frame 31 is provided with a lifting drive 35 for driving the lifting frame 32 to move up and down. The lifting drive 35 is a cylinder, and the driving end of the lifting drive 35 is connected to the lifting frame 32. The number of gold bead clamps 33 is not less than two. In this embodiment, the number of gold bead clamps 33 is two, and the two gold bead clamps 33 are symmetrically arranged. The gold bead clamps 33 and the bead clamping drive 34 are both connected to the lifting frame 32. The bead clamping drive 34 is a cylinder, and the driving end of the bead clamping drive 34 is transmission-connected to the gold bead clamp 33. The bead clamping drive 34 is used to drive the gold bead clamps 33 closer to or away from each other.
[0049] After the gold beads are transferred to the discharge track 13, the transverse frame 31 can be moved, and the lifting drive 35 can drive the lifting frame 32 so that the bottom of the lifting frame 32 is close to the discharge track 13, so that the gold beads are located between the two gold bead clamps 33, and the bead clamping drive 34 drives the gold bead clamps 33 close to each other, thereby clamping the gold beads. Then the transverse frame 31 and the lifting frame 32 can be moved again to move the gold beads to the placement seat 141, replacing the staff to clamp and move the gold beads, thereby improving processing efficiency.
[0050] The bottom of the lifting frame 32 is rotatably connected to the rotating seat 5, the gold bead clamp 33 is connected in the rotating seat 5 and passes through the bottom of the rotating seat 5, and the bead clamp driving member 34 is located at the top of the rotating seat 5. The bottom of the lifting frame 32 is provided with a rotating driving member 36 for driving the rotating seat 5 to rotate. The rotating driving member 36 is a motor, and the driving end of the rotating driving member 36 is connected to the top of the rotating seat 5. The bottom of the rotating seat 5 is slidingly connected with at least two gold wire clips 51. In this embodiment, the number of gold wire clips 51 is two, and the two gold wire clips 51 are symmetrically arranged. The rotating seat 5 is provided with a wire driving member 52 for driving the gold wire clips 51 to move. The wire driving member 52 is a cylinder, and the number of the wire driving members 52 is two, and the wire driving members 52 are symmetrically arranged. The sliding direction of the gold wire clip 51 is consistent with the direction of the rotation axis of the gold bead clamp 33, and the driving end of the wire driving member 52 is connected to the gold wire clip 51.
[0051] After the gold bead clamp 33 clamps the gold bead, the rotating drive member 36 can drive the rotating seat 5 to rotate 90°, and the transverse frame 31 and the lifting frame 32 can be moved to make the gold bead close to the gold wire raw material assembly, so that the gold wire is transported close to one side of the gold bead. When the gold wire approaches one side of the gold bead, the gold wire clamp 51 on that side is driven to move close to the gold bead, so that the wire clamping drive member 52 can drive the gold wire clamp 51 to move close to the gold bead, pressing the gold wire to the side wall of the gold bead to form a clamp. After clamping, the cutting drive member 42 can drive the cutting shear 421 to move to cut the gold wire, and then move the transverse frame 31 and the lifting frame 32 to transport the gold wire close to the other side of the gold bead. Repeat the operation so that gold wire is clamped on both sides of the gold bead, thereby replacing the staff to obtain gold wire suitable for welding and temporarily clamp the gold wire to the side wall of the gold bead, thereby improving efficiency.
[0052] The gold bead clamp 33 is connected to a transmission gear 331 at one end close to the rotating seat 5. The transmission gear 331 is rotatably connected to the rotating seat 5 through a rotating shaft. A transmission rack 53 is slidably connected to the rotating seat 5. The transmission rack 53 extends and slides in the vertical direction. Teeth are provided on opposite sides of the transmission rack 53. The gold bead clamp 33 and the transmission gear 331 are symmetrically arranged on both sides of the transmission rack 53. The transmission rack 53 is engaged with the transmission gear 331, and the driving end of the bead clamp driving member 34 is connected to the transmission rack 53.
[0053] When it is necessary to clamp the gold beads, move the transverse frame 31 and the lifting frame 32 to make the gold bead clamp 33 close to the discharge track 13, and make the bead clamp driving member 34 drive the transmission rack 53 to move, so that the transmission gear 331 and the gold bead clamp 33 can be rotated through transmission, so that the two gold bead clamps 33 are close to each other to clamp the gold beads.
[0054] Reference Figure 1 and Figure 4 A transverse driving member 37 is provided on the fixed frame 3, and the transverse driving member 37 is a motor. A transverse threaded rod 38 is rotatably connected to the fixed frame 3, and the transverse threaded rod 38 extends in the horizontal direction. The transverse frame 31 is threadedly connected to the transverse threaded rod 38, and the transverse threaded rod 38 passes through the transverse frame 31. The driving end of the transverse driving member 37 is connected to the transverse threaded rod 38, and the transverse driving member 37 can drive the transverse threaded rod 38 to rotate.
[0055] When the transverse frame 31 needs to move, the transverse driving member 37 drives the transverse threaded rod 38 to rotate, thereby driving the transverse frame 31 to slide.
[0056] Reference Figure 1 and Figure 5The gold wire raw material assembly includes a raw material rack 4 and a conveying pipe 41. The raw material rack 4 is installed on the top of the machine 1. The discharge end of the raw material rack 4 is close to the fixed frame 3. The conveying pipe 41 is connected to the feed end of the raw material rack 4. A conveying channel is provided inside the raw material rack 4. The conveying pipe 41 is connected to the conveying channel of the raw material rack 4. The cutting drive member 42 is installed at the discharge end of the raw material rack 4. A cutting seat 43 is provided at the discharge end of the raw material rack 4. The side wall of the cutting shear 421 is in contact with the side wall of the cutting seat 43. The cutting shear 421 and the cutting seat 43 can slide relative to each other. When the cutting shear 421 and the cutting seat 43 are in a cutting state, a through hole for the gold wire to pass through is formed at the discharge end of the raw material rack 4. A conveying assembly is provided on the raw material rack 4.
[0057] When it is necessary to transport gold wire, the gold wire can be inserted into the transport tube 41, and then inserted into the transport channel of the raw material rack 4 through the transport tube 41 for transport. The gold wire is transported by the transport component and transported to the discharge end of the raw material rack 4. Then, the cutting drive part 42 drives the cutting knife 421 to move, thereby cutting the gold wire to obtain the gold wire required for welding.
[0058] The conveying assembly includes a conveying shell 44, a conveying wheel 45 and a conveying drive 46. There are two conveying shells 44, and the two conveying shells 44 are symmetrically distributed on opposite sides of the material rack 4. The interior of the conveying shell 44 is connected to the conveying channel of the material rack 4. The conveying wheel 45 is rotatably connected to the inner wall of the conveying shell 44, and the conveying wheel 45 is inserted into the conveying channel. The conveying drive 46 is a motor, and the conveying drive 46 is used to drive the conveying wheel 45 to rotate. There are two conveying drives 46 and they are distributed on the two conveying shells 44. The conveying drive 46 is connected to the top of the conveying shell 44, and the driving end of the conveying drive 46 is connected to the conveying wheel 45.
[0059] When conveying the gold wire, the wheel surface of the conveying wheel 45 contacts the gold wire, and the conveying wheels 45 on both sides form a limit for the gold wire, which can make the conveying driving parts 46 on both sides drive the conveying wheels 45 to rotate in opposite directions, thereby conveying the gold wire to the discharge end of the raw material rack 4.
[0060] The implementation principle of a gold bead welding machine for producing gold beads in an embodiment of the present application is as follows: when it is necessary to weld gold beads and gold wires, the gold beads are clamped by the gold bead clamp 33, and then the gold beads are moved close to the discharge end of the raw material rack 4, and the gold wires are cut by the cutting drive 42 and the cutting shear 421, and at the same time, the cut gold wires are clamped by the gold wire clamp 51, so as to obtain the gold beads and gold wires that need to be welded, and then the rotating seat 5 is moved to move the gold beads and the gold wires to the placement seat 141, and the gold bead clamp 33 is driven to move away from each other, so that the mobile drive 11 drives the pushing and clamping frame 2 to move close to the placement seat 141, thereby clamping the gold beads, and at the same time, the main welding part 21 is close to the welding points of the two sides of the gold beads and the gold wire for welding, which can replace the traditional welding method of the staff, thereby improving the processing efficiency of the gold beads.
[0061] The above are all preferred embodiments of the present application. These embodiments are only explanations of the present application and do not limit the scope of protection of the present application in turn. Therefore, all equivalent changes made based on the structure, shape, and principle of the present application should be covered within the scope of protection of the present application.
Claims
1. A welding machine for gold bead production, characterized in that: include: Machine (1); A welding assembly is used for welding, wherein the machine platform (1) is provided with a moving drive member (11), and the moving drive member (11) is used to move the welding assembly; A clamping assembly is arranged on the machine platform (1); A loading assembly, used to move the gold beads to the clamping position of the clamping assembly; A gold wire raw material assembly is used to convey gold wire. The gold wire raw material assembly is close to the clamping assembly. A cutting drive component (42) is provided on the gold wire raw material assembly. A cutting shear (421) is provided at the driving end of the cutting drive component (42). The cutting shear (421) is used to cut the gold wire.
2. A gold bead production welding machine according to claim 1, characterized in that: The machine (1) is provided with a placement frame (14), the welding assembly includes a push-clamp frame (2) and a main weldment (21), the push-clamp frame (2) and the placement frame (14) are slidingly connected, the movable driving member (11) is arranged on the placement frame (14), the movable driving member (11) is used to drive the push-clamp frame (2) to move, and the main weldment (21) is installed on the push-clamp frame (2).
3. A gold bead production welding machine according to claim 1, characterized in that: The clamping assembly includes a fixed frame (3), a transverse frame (31), a lifting frame (32), a gold bead clamp (33) and a bead clamping driving member (34), wherein the fixed frame (3) is arranged on the machine platform (1), the transverse frame (31) is slidably connected to the fixed frame (3), the lifting frame (32) is slidably connected to the transverse frame (31), and the transverse frame (31) is provided with a lifting driving member (35) for driving the lifting frame (32) to rise and fall. The number of the gold bead clamps (33) is not less than two, and the gold bead clamps (33) are symmetrically arranged. The gold bead clamps (33) and the bead clamping driving member (34) are both connected to the lifting frame (32), and the bead clamping driving member (34) is used to drive the gold bead clamps (33) to move closer to or farther away from each other.
4. A gold bead production welding machine according to claim 3, characterized in that: The bottom of the lifting frame (32) is rotatably connected to a rotating seat (5), the gold bead clamp (33) and the bead clamp driving member (34) are both connected to the rotating seat (5), the lifting frame (32) is provided with a rotating driving member (36) for driving the rotating seat (5) to rotate, at least two gold wire clamps (51) are slidably connected to the rotating seat (5), and the rotating seat (5) is provided with a wire clamp driving member (52) for driving the gold wire clamps (51) to move.
5. A gold bead production welding machine according to claim 4, characterized in that: One end of the gold bead clamp (33) close to the rotating seat (5) is connected to a transmission gear (331), the transmission gear (331) is rotatably connected to the rotating seat (5), a transmission rack (53) is slidably connected to the rotating seat (5), the transmission rack (53) is meshed with the transmission gear (331), and the driving end of the bead clamp driving member (34) is connected to the transmission rack (53).
6. A gold bead production welding machine according to claim 3, characterized in that: The fixed frame (3) is provided with a transverse driving member (37), the fixed frame (3) is rotatably connected to a transverse threaded rod (38), the transverse frame (31) is threadedly connected to the transverse threaded rod (38), and the driving end of the transverse driving member (37) is connected to the transverse threaded rod (38).
7. A gold bead production welding machine according to claim 1, characterized in that: The gold wire raw material assembly includes a raw material rack (4) and a conveying pipe (41), wherein the raw material rack (4) is mounted on the machine (1), the conveying pipe (41) is connected to the feeding end of the raw material rack (4), a conveying channel is provided inside the raw material rack (4), the conveying pipe (41) is connected to the conveying channel of the raw material rack (4), the cutting drive member (42) is mounted on the discharging end of the raw material rack (4), the discharging end of the raw material rack (4) is close to the clamping assembly, and the raw material rack (4) is provided with a conveying assembly.
8. A gold bead production welding machine according to claim 7, characterized in that: The transport assembly includes a transport shell (44), a transport wheel (45) and a transport driving member (46). The transport shell (44) is connected to the raw material rack (4). The interior of the transport shell (44) is connected to the transport channel. The transport wheel (45) is rotatably connected to the inner wall of the transport shell (44). The transport driving member (46) is used to drive the transport wheel (45) to rotate.